The simplest is that one of the cubes is hollow - except that in that case it would not be a proper cube.
The next simplest answer is the amount of air dissolved in the water before it was frozen.
A more complex answer is the proportions of heavier isotopes of oxygen and hydrogen in the water molecules.
No. There are many, many different kinds of solid, and they come in a variety of densities. Something like a brick is fairly heavy, but if it was made of wood, it would be a lot lighter and a lot less dense. There are a zillion other examples that could be cited.
No, cubes do not float better in water than spheres. Objects float based on their density and volume, not their shape. If a cube and a sphere have the same density and volume, they will float in water in the same manner.
No, ice cubes floating in water is not a compound. Ice is the solid form of water, which is a pure substance. When ice cubes float in water, it is due to the difference in density between ice and liquid water.
The material (wood), volume (cubic shape), and density (assuming same type of wood) remain constant for the four cubes of wood.
If Ice cubes are melting in water, the temperature of both the ice cubes and the water will be exactly the freezing temperature of water: 32F, 0C. You cannot change this. You can add heat to make the ice cubes melt faster, but the extra heat will have no effect on the temperature, It will all go to melting the ice cubes.
Two cubes are exactly the same size. The cube that is made of the material with the largest density will have the largest mass.
Depends on the dimensions of the prism, and how large of cubes they are.
The cube made of the material with the largest density will have the greatest mass since density is the mass per unit volume. This means that for the same size, the denser material will have more mass packed into it compared to the less dense material.
To determine the number of different size cubes that can be made with 64 multilink cubes, we need to find all the factors of 64. The factors of 64 are 1, 2, 4, 8, 16, 32, and 64. These factors correspond to the possible dimensions of the cubes that can be formed using the multilink cubes. Therefore, there are 7 different size cubes that can be made with 64 multilink cubes.
To determine the number of different rectangular prisms that can be made with 10 cm cubes, we need to consider the dimensions of each prism. A rectangular prism has three dimensions: length, width, and height. Since each side of the prism can be made up of multiple cubes, we need to find all the possible combinations of dimensions that can be formed using 10 cm cubes. This involves considering factors such as the number of cubes available and the different ways they can be arranged to form unique rectangular prisms.
To determine the number of prisms that can be made with 18 cubes, we need to consider the different dimensions of the prism. A prism requires at least 3 faces to form a solid shape. With 18 cubes, we can form prisms with dimensions of 1x1x18, 1x2x9, or 1x3x6. Therefore, there are 3 possible prisms that can be made with 18 cubes.
The cubes can have the same volume but different masses if they are made of different materials with varying densities. Density is the measure of mass per unit volume, so cubes made of denser materials will have a higher mass even if their volume is the same.
The density is(mass of the cube)/(15.625)
The number of cubes that make up 1 ton depends on the size of the cubes and the material they are made from. For instance, if we consider a standard cubic meter of water, which weighs about 1 ton, then there would be one cubic meter of water in a ton. If the cubes are smaller or made of a denser material, the number would vary accordingly. To provide a precise answer, you need to specify the dimensions and density of the cubes.
As long as the cubes are 1x1x1 then any box with an equivalent volume would hold the same number of cubes. The volume of the 3x4x10 box is 120. So a box with the dimensions 1x1x120 would work just as well as a box with the dimensions 12x10x1 or 2x5x12.
2 cubes = 4 prisms
The answer depends on their relative dimensions.